Voir la notice de l'article provenant de la source Math-Net.Ru
@article{PFMT_2022_2_a6, author = {G. V. Kulak and V. N. Naunyka and T. V. Nikolaenko}, title = {Anisotropic {Bragg} diffraction of light on holographic phase gratings under {Fresnel} reflection conditions}, journal = {Problemy fiziki, matematiki i tehniki}, pages = {38--43}, publisher = {mathdoc}, number = {2}, year = {2022}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/PFMT_2022_2_a6/} }
TY - JOUR AU - G. V. Kulak AU - V. N. Naunyka AU - T. V. Nikolaenko TI - Anisotropic Bragg diffraction of light on holographic phase gratings under Fresnel reflection conditions JO - Problemy fiziki, matematiki i tehniki PY - 2022 SP - 38 EP - 43 IS - 2 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/PFMT_2022_2_a6/ LA - ru ID - PFMT_2022_2_a6 ER -
%0 Journal Article %A G. V. Kulak %A V. N. Naunyka %A T. V. Nikolaenko %T Anisotropic Bragg diffraction of light on holographic phase gratings under Fresnel reflection conditions %J Problemy fiziki, matematiki i tehniki %D 2022 %P 38-43 %N 2 %I mathdoc %U http://geodesic.mathdoc.fr/item/PFMT_2022_2_a6/ %G ru %F PFMT_2022_2_a6
G. V. Kulak; V. N. Naunyka; T. V. Nikolaenko. Anisotropic Bragg diffraction of light on holographic phase gratings under Fresnel reflection conditions. Problemy fiziki, matematiki i tehniki, no. 2 (2022), pp. 38-43. http://geodesic.mathdoc.fr/item/PFMT_2022_2_a6/
[1] N.S. Shelekhov, O.V. Bandyuk, A.P. Popov, A.O. Rebezov, “Ispolzovanie fenantrenkhinona dlya formirovaniya fazovykh trekhmernykh gologramm v srede reoksana”, Opticheskaya golografiya s zapisyu v trekhmernykh sredakh, Sb. nauchnykh trudov, ed. Yu.N. Denisyuk, Nauka, Leningrad, 1986, 74–82
[2] A.N. Popov, A.F. Kavtrev, A.V. Veniaminov, G.I. Lashkov, “Dlinnovolnovaya granitsa spektralnoi chuvstvitelnosti polimerov reoksana”, Opticheskaya golografiya s zapisyu v trekhmernykh sredakh, Sb. nauchnykh trudov, ed. Yu.N. Denisyuk, Nauka, L., 1986, 82–91
[3] V.A. Barachevskii, “Sovremennoe sostoyanie razrabotki svetochuvstvitelnykh sred (obzor)”, Opt. i spektr., 124:3 (2018), 371–399
[4] S.M. Shandarov, V.V. Shepelevich, N.D. Khatkov, “Izmenenie tenzora dielektricheskoi pronitsaemosti v kubicheskikh fotorefraktivnykh kristallakh pod deistviem elektricheskogo polya golograficheskoi reshetki”, Opt. i spektr., 67:4 (1989), 819–822
[5] V.S. Bagaev, Yu.N. Berozashvili, L.V. Keldysh, “Ob elektroopticheskom effekte v GaAs”, Pisma v ZhETF, 4:9 (1966), 364–368
[6] A.G. Aronov, G.E. Pikus, “Anizotropnye elektroopticheskie effekty v poluprovodnikakh”, Fizika tverdogo tela, 10:3 (1968), 825–832
[7] V.K. Malinovskii, O.A. Gudaev, V.A. Gusev, S.I. Demenko, Fotoindutsirovannye yavleniya v sillenitakh, Nauka, M., 1990, 159 pp.
[8] G.V. Kulak, V.N. Navnyko, T.V. Nikolaenko, “Polyarizatsionnye osobennosti difraktsii sveta na golograficheskikh fazovykh reshetkakh v srede «reoksan»”, Problemy fiziki, matematiki i tekhniki, 2021, no. 3 (48), 14–18
[9] M.P. Petrov, S.I. Stepanov, A.V. Khomenko, Fotochuvstvitelnye elektroopticheskie sredy v golografii i opticheskoi obrabotke informatsii, Nauka, L., 1983, 270 pp.
[10] G.V. Kulak, “Difraktsiya sveta na ultrazvuke v usloviyakh frenelevskogo otrazheniya”, Opt. i spektr., 76:6 (1994), 1027–1029
[11] J.A. Kong, “Second-order coupled-mode equations for spatially periodic media”, J. Opt. Soc. Am., 67:6 (1977), 825–829 | DOI
[12] M. Born, E. Volf, Osnovy optiki, Nauka, M., 1973, 721 pp.